Structural and conformational properties of the tetrahalides MX4 with M = S, Se, Te and X = F, Cl, Br, I were studied with quantum chemical calculations (MP2/aug-cc-pVTZ and relativistic core potentials for heavy atoms). The pseudotrigonal bipyramidal geometries (C2v symmetry) of the three tetrafluorides and of TeCl4, whose structures have been determined by gas electron diffraction, are very well reproduced with this computational method. No additional stable conformer with C3v, CS, C4v or Td symmetry is predicted for these four chalcogen tetrahalides. For all other MX4 compounds, except SeI4, the existence of two conformers with C2v and Td symmetry is predicted. The Td structure is favoured in the case of SI4 and SeBr4 and SeI4 is predicted to exist only as Td conformer.
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